1. When a mole of metal oxide decomposes, enthalpy change is positive. What de it tell you about the reaction? A. The reaction is exothermic. B. The reaction is endothermic. C. The reaction is hypothetical. D. The reaction does not require energy. 11ed the change in

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Chapter10: Entropy And The Second Law Of Thermodynamics
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Problem 10.102PAE: 10.102 Ammonia can react with oxygen gas to form nitrogen dioxide and water. (a) Write a balanced...
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1 When a mole of metal oxide decomposes, enthalpy change is positive. What deee
it tell you about the reaction?
A. The reaction is exothermic.
B. The reaction is endothermic.
C. The reaction is hypothetical.
D. The reaction does not require energy.
2. The heat of a given reaction is called the change in
C. entropy
D. electricity
A. energy
B. enthalpy
3. How do you calculate the enthalpy of a reaction?
A. AH = AHproducts - AHreactants
C. AT = q/ mC
B. AG = AH -TAS
D. E mc2
4. What do you need to consider when looking for enthalpy value of a certain
substance?
A. color of the species
B. mass of the species
5. Which of the equation below refers to the enthalpy of formation?
C. physical state of the species
D. concentration of the species
AH = -364 kJmol-1
AH = - 1286 kJmol-1
Na(g)-
Na+(g) + e-
C2H;OH + 30218) -
2Cs) + 2H21g)
Na*(ag)
A.
%3D
2C02(g) + 3H20 ()
C2H4 (s)
В.
ww
С.
AH = - 52.3 kJmol-1
D.
Na*) -
AH = - 364 kJmol-1
Transcribed Image Text:1 When a mole of metal oxide decomposes, enthalpy change is positive. What deee it tell you about the reaction? A. The reaction is exothermic. B. The reaction is endothermic. C. The reaction is hypothetical. D. The reaction does not require energy. 2. The heat of a given reaction is called the change in C. entropy D. electricity A. energy B. enthalpy 3. How do you calculate the enthalpy of a reaction? A. AH = AHproducts - AHreactants C. AT = q/ mC B. AG = AH -TAS D. E mc2 4. What do you need to consider when looking for enthalpy value of a certain substance? A. color of the species B. mass of the species 5. Which of the equation below refers to the enthalpy of formation? C. physical state of the species D. concentration of the species AH = -364 kJmol-1 AH = - 1286 kJmol-1 Na(g)- Na+(g) + e- C2H;OH + 30218) - 2Cs) + 2H21g) Na*(ag) A. %3D 2C02(g) + 3H20 () C2H4 (s) В. ww С. AH = - 52.3 kJmol-1 D. Na*) - AH = - 364 kJmol-1
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